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神经束蛋白-I 被细胞周期蛋白依赖性激酶5磷酸化:对神经元形态发生和皮质迁移的影响。

Neurabin-I is phosphorylated by Cdk5: implications for neuronal morphogenesis and cortical migration.

作者信息

Causeret Frédéric, Jacobs Tom, Terao Mami, Heath Owen, Hoshino Mikio, Nikolic Margareta

机构信息

Department of Cellular and Molecular Neuroscience, Imperial College School of Medicine, Charing Cross Campus, London W6 8RP, United Kingdom.

出版信息

Mol Biol Cell. 2007 Nov;18(11):4327-42. doi: 10.1091/mbc.e07-04-0372. Epub 2007 Aug 15.

DOI:10.1091/mbc.e07-04-0372
PMID:17699587
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2043560/
Abstract

The correct morphology and migration of neurons, which is essential for the normal development of the nervous system, is enabled by the regulation of their cytoskeletal elements. We reveal that Neurabin-I, a neuronal-specific F-actin-binding protein, has an essential function in the developing forebrain. We show that gain and loss of Neurabin-I expression affect neuronal morphology, neurite outgrowth, and radial migration of differentiating cortical and hippocampal neurons, suggesting that tight regulation of Neurabin-I function is required for normal forebrain development. Importantly, loss of Neurabin-I prevents pyramidal neurons from migrating into the cerebral cortex, indicating its essential role during early stages of corticogenesis. We demonstrate that in neurons Rac1 activation is affected by the expression levels of Neurabin-I. Furthermore, the Cdk5 kinase, a key regulator of neuronal migration and morphology, directly phosphorylates Neurabin-I and controls its association with F-actin. Mutation of the Cdk5 phosphorylation site reduces the phenotypic consequences of Neurabin-I overexpression both in vitro and in vivo, suggesting that Neurabin-I function depends, at least in part, on its phosphorylation status. Together our findings provide new insight into the signaling pathways responsible for controlled changes of the F-actin cytoskeleton that are required for normal development of the forebrain.

摘要

神经元的正确形态和迁移对于神经系统的正常发育至关重要,而这是由其细胞骨架成分的调控实现的。我们发现,Neurabin-I,一种神经元特异性的F-肌动蛋白结合蛋白,在发育中的前脑具有重要功能。我们表明,Neurabin-I表达的增加和减少会影响分化中的皮质和海马神经元的形态、神经突生长和径向迁移,这表明正常前脑发育需要对Neurabin-I功能进行严格调控。重要的是,Neurabin-I的缺失会阻止锥体神经元迁移到大脑皮层,表明其在皮质发生早期阶段的关键作用。我们证明,在神经元中,Rac1的激活受Neurabin-I表达水平的影响。此外,Cdk5激酶,一种神经元迁移和形态的关键调节因子,直接磷酸化Neurabin-I并控制其与F-肌动蛋白的结合。Cdk5磷酸化位点的突变减少了Neurabin-I在体外和体内过表达的表型后果,这表明Neurabin-I的功能至少部分取决于其磷酸化状态。我们的研究结果共同为负责前脑正常发育所需的F-肌动蛋白细胞骨架受控变化的信号通路提供了新的见解。

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Neuronal polarity is regulated by a direct interaction between a scaffolding protein, Neurabin, and a presynaptic SAD-1 kinase in Caenorhabditis elegans.在秀丽隐杆线虫中,神经元极性由一种支架蛋白Neurabin与一种突触前SAD-1激酶之间的直接相互作用调控。
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